CN216704637U - Broken transfer car (buggy) of gardens rubbish - Google Patents

Broken transfer car (buggy) of gardens rubbish Download PDF

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Publication number
CN216704637U
CN216704637U CN202123152043.6U CN202123152043U CN216704637U CN 216704637 U CN216704637 U CN 216704637U CN 202123152043 U CN202123152043 U CN 202123152043U CN 216704637 U CN216704637 U CN 216704637U
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China
Prior art keywords
crushing
lifter
driving unit
broken
discharging
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CN202123152043.6U
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Chinese (zh)
Inventor
黄达焱
伍建林
胡文武
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Huada Fujian Longyan Environmental Sanitation Technology Co ltd
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Huada Fujian Longyan Environmental Sanitation Technology Co ltd
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Abstract

The utility model relates to a garden garbage crushing transfer trolley, which comprises: vehicle chassis, broken mechanism, transport mechanism, receiving mechanism and storage case. The vehicle chassis is provided with a material receiving mechanism and a material storage box, and the material receiving mechanism is communicated with the material storage box. The discharge gate of crushing mechanism and receiving mechanism's feed inlet intercommunication, crushing mechanism are used for broken gardens rubbish and fall to receiving mechanism. Receiving mechanism includes transfer mechanism, and transfer mechanism is used for transporting broken gardens rubbish in the receiving mechanism to the storage case. Be different from prior art, broken gardens rubbish is passed through receiving mechanism's feed inlet by broken mechanism's discharge gate and is fallen to receiving mechanism in, broken gardens rubbish is transported to the storage case in the rethread transport mechanism with receiving mechanism. Can directly transport after the gardener's rubbish of breakage fills up in the storage case, the rational utilization space for transport cost reduction improves work efficiency.

Description

Broken transfer car (buggy) of gardens rubbish
Technical Field
The application relates to the technical field of garden garbage crushing, in particular to a garden garbage crushing transfer trolley.
Background
In the prior art to the maintenance of the trees beside the highway, to the timber on roadside and prune the branch of cutting, need collect after the pruning is cut, transport through the vehicle after collecting, carry out concentrated broken handle at last. But because the shape diverse of the branch of cutting down, the carriage of putting into the vehicle occupies a large amount of spaces easily for the carriage space can't be rationally utilized, causes the vehicle to need transport many times, transports with high costs and reduces work efficiency.
SUMMERY OF THE UTILITY MODEL
In view of above-mentioned problem, the application provides a broken transfer car (buggy) of gardens rubbish for solve the carriage space and can't be rationally utilized, transport with high costs and reduce work efficiency's technical problem.
In order to achieve the above objects, the inventor provides a garden garbage crushing transfer trolley, comprising: the vehicle comprises a vehicle chassis, a crushing mechanism, a transferring mechanism, a material receiving mechanism and a material storage box;
the vehicle chassis is provided with the material receiving mechanism and the material storage box, and the material receiving mechanism is communicated with the material storage box;
the discharge hole of the crushing mechanism is communicated with the feed hole of the material receiving mechanism, and the crushing mechanism is used for crushing garden garbage and dropping the garden garbage to the material receiving mechanism;
receiving mechanism includes transfer mechanism, transfer mechanism is used for with broken gardens rubbish in the receiving mechanism transports extremely the storage case.
In some embodiments, the receiving mechanism further comprises a receiving cavity, and the crushing mechanism is arranged in the receiving cavity;
the discharge gate of broken mechanism with connect the feed inlet intercommunication in material chamber, broken mechanism is used for broken gardens rubbish and falls extremely connect the material chamber.
In some embodiments, the receiving cavity is provided with a crushing mechanism feeding hole behind the vehicle driving direction, and the garden garbage enters the crushing mechanism through the crushing mechanism feeding hole.
In some embodiments, the crushing mechanism includes a feed inlet cover hinged below the crushing mechanism feed inlet.
In some embodiments, the crushing mechanism further comprises a cover plate driving unit, the cover plate driving unit is connected with the feed port cover plate, and the cover plate driving unit is used for driving the feed port cover plate to turn over so as to open or close the feed port of the crushing mechanism.
In some embodiments, the transfer mechanism includes a lifter, a lifter drive unit, a scraper drive unit, and a scraper plate;
the lifter driving unit is connected with the lifter and drives the lifter to reciprocate between the upper end and the lower end of the receiving cavity so as to lift or lower the lifter;
the scraping plate is hinged to one end of the lifter, the scraping driving unit is connected with the scraping plate, and the scraping plate driving unit is used for driving the scraping plate to rotate clockwise or anticlockwise around a hinged point so as to overturn the scraping plate.
In some embodiments, the transfer mechanism further comprises a lifter rail, one end of the lifter rail is arranged at the upper end of the receiving cavity, and the other end of the lifter rail extends towards the lower end of the receiving cavity;
the lifter driving unit drives the lifter to move on the lifter guide rail.
In some embodiments, the discharge port of the crushing mechanism is communicated with the feed port of the receiving mechanism through a discharge pipe.
In some embodiments, the garden garbage crushing and transferring trolley further comprises a discharging mechanism, and the discharging mechanism is arranged in the storage bin;
the discharging mechanism comprises a discharging part and a discharging driving unit, the discharging driving unit is connected with the discharging part, and the discharging driving unit is used for driving the discharging part to reciprocate along the length direction of the storage box so as to load crushed garden garbage or unload the crushed garden garbage.
In some embodiments, the crushing mechanism comprises a shredder including a shredder motor and a shredder blade;
the forward rotation or the reverse rotation of the shredding motor is used for driving the shredding blade to rotate clockwise or anticlockwise.
Be different from prior art, above-mentioned technical scheme is being provided with broken mechanism, receiving mechanism and storage case, and broken mechanism's discharge gate and receiving mechanism's feed inlet intercommunication, broken mechanism are used for the gardens rubbish breakage, and broken gardens rubbish falls to receiving mechanism in through receiving mechanism's feed inlet by broken mechanism's discharge gate, and broken gardens rubbish in the rethread transport mechanism transports receiving mechanism to the storage case. Can directly transport after the gardener's rubbish of breakage fills up in the storage case, the rational utilization space for transport cost reduction improves work efficiency.
The above description of the present invention is only an overview of the technical solutions of the present application, and in order to make the technical solutions of the present application more clearly understood by those skilled in the art, further, the present invention can be implemented according to the contents described in the text and the drawings of the present application, and in order to make the above objects, other objects, features, and advantages of the present application more easily understood, the following description will be made in conjunction with the detailed description of the present application and the drawings.
Drawings
The drawings are only for purposes of illustrating the principles, implementations, applications, features, and effects of particular embodiments of the application, as well as others related thereto, and are not to be construed as limiting the application.
In the drawings of the specification:
FIG. 1 is a sectional view of a garden waste crushing and transferring trolley according to an embodiment;
fig. 2 is a schematic structural view of the receiving mechanism according to the embodiment;
FIG. 3 is another cross-sectional view of the garden waste crushing and transfer vehicle according to the embodiment;
FIG. 4 is a schematic structural view of the garden waste crushing and transferring trolley according to the embodiment;
fig. 5 is a schematic structural diagram for discharging the garden garbage crushing and transferring trolley according to the specific embodiment.
The reference numerals referred to in the above figures are explained below:
1. a vehicle chassis;
2. a crushing mechanism;
21. a feed inlet cover plate;
22. a cover plate driving unit;
23. a feed inlet of the crushing mechanism;
3. a material receiving mechanism;
31. a receiving cavity;
32. a transfer mechanism;
321. a lifter;
322. a lifter driving unit;
323. a scraping drive unit;
324. a scraping plate;
325. a riser rail;
4. a lifting drive unit;
5. a material storage box;
6. a discharge pipe;
71. unloading the material;
72. a discharge drive unit;
73. a discharge guide rail;
8. a hydraulic system.
Detailed Description
In order to explain in detail possible application scenarios, technical principles, practical embodiments, and the like of the present application, the following detailed description is given with reference to the accompanying drawings in conjunction with the listed embodiments. The embodiments described herein are merely for more clearly illustrating the technical solutions of the present application, and therefore, the embodiments are only used as examples, and the scope of the present application is not limited thereby.
Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase "an embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or related to other embodiments specifically defined. In principle, in the present application, the technical features mentioned in the embodiments can be combined in any manner to form a corresponding implementable technical solution as long as there is no technical contradiction or conflict.
Unless defined otherwise, technical terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the use of relational terms herein is intended only to describe particular embodiments and is not intended to limit the present application.
In the description of the present application, the term "and/or" is a expression for describing a logical relationship between objects, meaning that three relationships may exist, for example a and/or B, meaning: there are three cases of A, B, and both A and B. In addition, the character "/" herein generally indicates that the former and latter associated objects are in a logical relationship of "or".
In this application, terms such as "first" and "second" are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions.
Without further limitation, in this application, the use of "including," "comprising," "having," or other similar expressions in phrases and expressions of "including," "comprising," or "having," is intended to cover a non-exclusive inclusion, and such expressions do not exclude the presence of additional elements in a process, method, or article that includes the recited elements, such that a process, method, or article that includes a list of elements may include not only those elements but also other elements not expressly listed or inherent to such process, method, or article.
As is understood in the examination of the guidelines, the terms "greater than", "less than", "more than" and the like in this application are to be understood as excluding the number; the expressions "above", "below", "within" and the like are understood to include the present numbers. In addition, in the description of the embodiments of the present application, "a plurality" means two or more (including two), and expressions related to "a plurality" similar thereto are also understood, for example, "a plurality of groups", "a plurality of times", and the like, unless specifically defined otherwise.
In the description of the embodiments of the present application, spatially relative expressions such as "central," "longitudinal," "lateral," "length," "width," "thickness," "up," "down," "front," "back," "left," "right," "vertical," "horizontal," "vertical," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used, and the indicated orientations or positional relationships are based on the orientations or positional relationships shown in the specific embodiments or drawings and are only for convenience of describing the specific embodiments of the present application or for the convenience of the reader, and do not indicate or imply that the device or component in question must have a specific position, a specific orientation, or be constructed or operated in a specific orientation and therefore should not be construed as limiting the embodiments of the present application.
Unless specifically stated or limited otherwise, the terms "mounted," "connected," "secured," and "disposed" used in the description of the embodiments of the present application are to be construed broadly. For example, the connection can be a fixed connection, a detachable connection, or an integrated arrangement; it can be a mechanical connection, an electrical connection, or a communication connection; they may be directly connected or indirectly connected through an intermediate; which may be communication within two elements or an interaction of two elements. Specific meanings of the above terms in the embodiments of the present application can be understood by those skilled in the art to which the present application pertains in accordance with specific situations.
Referring to fig. 1 to 5, the present embodiment relates to a garden garbage crushing and transferring trolley, which comprises: the vehicle chassis 1, the crushing mechanism 2, the transferring mechanism 32, the receiving mechanism 3 and the storage box 5. The vehicle chassis 1 is provided with a material receiving mechanism 3 and a material storage box 5, and the material receiving mechanism 3 is communicated with the material storage box 5. The discharge gate of crushing mechanism 2 and receiving mechanism 3's feed inlet intercommunication, crushing mechanism 2 is used for broken gardens rubbish and falls to receiving mechanism 3. Receiving mechanism 3 includes transfer mechanism 32, and transfer mechanism 32 is used for transporting the interior broken gardens rubbish of receiving mechanism 3 to storage case 5.
The crushing mechanism 2 may be an existing crushing mechanism 2, alternatively, the crushing mechanism 2 comprises a crusher and a crushing drive unit, the crushing drive unit is connected with the crusher, and the crushing drive unit may be an electric motor or a motor, and drives the crusher to work.
One side of the material storage box 5 is provided with an opening, and one side of the material receiving mechanism 3 is also provided with a butt joint port corresponding to the opening. Therefore, the material receiving mechanism 3 is communicated with the material storage box 5. Finally, the garden garbage crushed in the receiving mechanism 3 is transported to the storage bin 5 through the transferring mechanism 32.
The engine of the vehicle chassis 1 provides upper-mounted working power, is not limited by places, can be operated in a flowing mode along the way, and can also be externally connected with three-phase mains supply, so that the low-noise and low-energy-consumption operation is realized.
Be different from prior art, above-mentioned technical scheme is being provided with crushing mechanism 2, receiving mechanism 3 and storage case 5, and crushing mechanism 2's discharge gate and receiving mechanism 3's feed inlet intercommunication, and crushing mechanism 2 is used for the gardens rubbish breakage, and broken gardens rubbish falls to receiving mechanism 3 in through receiving mechanism 3's feed inlet by crushing mechanism 2's discharge gate, and rethread transport mechanism 32 transports the interior broken gardens rubbish of receiving mechanism 3 to storage case 5. But direct transportation after the gardener rubbish of breakage is filled with in storage case 5, the rational utilization space for transport cost reduction improves work efficiency.
According to some embodiments of the present application, optionally, as shown in fig. 1, the receiving mechanism 3 further includes a receiving cavity 31, and the crushing mechanism 2 is disposed in the receiving cavity 31. The discharge hole of the crushing mechanism 2 is communicated with the feed inlet of the material receiving cavity 31, and the crushing mechanism 2 is used for crushing garden garbage and dropping the garden garbage to the material receiving cavity 31.
The material receiving cavity 31 is in a certain shape, the upper end of the material receiving cavity 31 is flush with the upper end of the material storage box 5, and the lower end of the material receiving cavity 31 is arc-shaped and protrudes out of the vehicle chassis 1 by a certain distance, but still higher than the ground. In addition, the material receiving cavity 31 is communicated with the material storage box 5, that is, the material receiving mechanism 3 is communicated with the material storage box 5 through the material receiving cavity 31.
According to some embodiments of the application, optionally, as shown in fig. 2, the material receiving cavity 31 is provided with a crushing mechanism feeding hole 23 at the rear of the vehicle traveling direction, and the garden waste enters the crushing mechanism 2 through the crushing mechanism feeding hole 23.
Connect the rear of material chamber 31 to be provided with crushing mechanism 2 to connect material chamber 31 to seted up crushing mechanism feed inlet 23 at the rear, thereby make things convenient for gardens rubbish to get into crushing mechanism 2 breakage through crushing mechanism feed inlet 23, broken gardens rubbish can directly fall to connect material chamber 31 in, the rethread connects transport mechanism 32 in the material chamber 31 to transport to storage case 5 with connecing the interior broken gardens rubbish of material chamber 31.
According to some embodiments of the present application, optionally, as shown in fig. 2, the crushing mechanism 2 comprises a feed opening cover plate 21, the feed opening cover plate 21 being hinged below the crushing mechanism feed opening 23. Normally, the feed inlet cover plate 21 is retracted, and when in use, the feed inlet cover plate 21 is lowered. Because the position of feed inlet is on the high side, is unfavorable for the staff to carry out broken operation, consequently increases a feed inlet apron 21, and convenient work, branch can put up on feed inlet apron 21, carries out the feeding.
According to some embodiments of the present application, optionally, the crusher 2 further comprises a cover plate driving unit 22, the cover plate driving unit 22 is connected to the feed opening cover plate 21, and the cover plate driving unit 22 is configured to drive the feed opening cover plate 21 to turn over to open or close the crusher feed opening 23. Therefore, the cover plate driving unit 22 can turn over the feed inlet cover plate 21, and the feed inlet 23 of the crushing mechanism is opened or closed, so that the use is convenient.
According to some embodiments of the present application, optionally, as shown in fig. 2, the transfer mechanism 32 includes a lifter 321, a lifter driving unit 322, a scraping driving unit 323, and a scraping plate 324. The lifter driving unit 322 is connected to the lifter 321, and the lifter driving unit 322 drives the lifter 321 to reciprocate between the upper end and the lower end of the receiving chamber 31 to lift or lower the lifter 321. The scraping plate 324 is hinged to one end of the lifter 321, the scraping driving unit 323 is connected to the scraping plate 324, and the scraping plate 324 driving unit is configured to drive the scraping plate 324 to rotate clockwise or counterclockwise around the hinge point to turn over the scraping plate 324.
Wherein the transfer mechanism 32 may be an existing transfer mechanism 32, optionally, the transfer mechanism 32 includes a lifter 321, a lifter driving unit 322, a scraping driving unit 323, and a scraping plate 324. Among them, the lifter driving unit 322 may be a lifter 321 cylinder or a lifter 321 cylinder. One end of the lifter driving unit 322 is disposed at the upper end of the material receiving chamber 31, the other end of the lifter driving unit 322 is connected to the lifter 321, and the lifter driving unit 322 is configured to drive the lifter 321 to move between the upper end and the lower end of the material receiving chamber 31, so as to lift or lower the lifter 321. In addition, the lifter 321 is provided with a scraping driving unit 323, and the scraping driving unit 323 may be a scraping cylinder or a scraping cylinder. The scraping driving unit 323 is connected to a scraping plate 324, and the scraping plate 324 is hinged to one end of the lifter 321 near the lower end of the receiving chamber 31. The scraping driving unit 323 is used for driving the scraping plate 324 to rotate clockwise or counterclockwise around the hinge point to turn over the scraping plate 324. The arc-shaped lower end of the material receiving cavity 31 is used for scraping materials by the scraping plate 324.
When the transfer mechanism 32 is required to transfer the garden waste crushed in the material receiving chamber 31, first, the lifter driving unit 322 drives the lifter 321 to move toward the lower end of the material receiving chamber 31 to lower the lifter 321. After the lifter 321 descends to a certain position, the scraping driving unit 323 drives the scraping plate 324 to rotate clockwise around the hinge point of the scraping plate 324 and the lifter 321 until the scraping plate 324 is parallel to the horizontal direction, so as to catch the crushed garden garbage. Finally, the lifter driving unit 322 drives the lifter 321 to move toward the upper end of the receiving chamber 31, so as to lift the lifter 321 until the scraper plate 324 is flush with the lower end of the storage box 5. At this time, the crushed garden spammed on the scraper plate 324 is subjected to gravity to be dropped into the storage bin 5. The above-described operation is repeated until the magazine 5 is filled. As a preferred embodiment, in order to facilitate the broken garden bought by the scraping plate 324 to fall into the storage box 5, the lifter 321 is disposed at an acute angle with the upper end of the receiving cavity 31 or parallel to the side of the receiving cavity 31 connected to the storage box 5.
According to some embodiments of the present application, optionally, as shown in fig. 2, the transfer mechanism 32 further includes a lifter guide rail 325, one end of the lifter guide rail 325 is disposed at the upper end of the material receiving chamber 31, and the other end of the lifter guide rail 325 extends toward the lower end of the material receiving chamber 31. The lifter driving unit 322 drives the lifter 321 to move on the lifter rail 325.
In order to facilitate the movement of the lifter 321 along the predetermined trajectory, a lifter guide 325 is provided. The lifters 321 are provided on the lifter guide rails 325, and the lifters 321 are moved along the lifter guide rails 325 by the lifter driving unit 322. One end of the lifter guide rail 325 is arranged at the upper end of the receiving cavity 31, and the other end of the lifter guide rail 325 extends towards the lower end of the receiving cavity 31 and can directly extend to the lower end of the receiving cavity 31 or extend to the middle of the receiving cavity 31. Preferably, the lifter rail 325 extends a length that is one-half of the longest length of the material receiving chamber 31. As a preferred embodiment, the lifter guide rail 325 is at an acute angle with the upper end of the receiving chamber 31 or parallel with the side of the receiving chamber 31 connected with the storage box 5. This arrangement has the advantage that: when the scraping plate 324 catches the crushed garden garbage, and the lifter driving unit 322 drives the lifter 321 to ascend along the lifter guide 325, the crushed garden garbage caught by the scraping plate 324 is also moved toward the storage bin 5 by the lifter guide 325, so that the crushed garden garbage caught by the scraping plate 324 falls into the storage bin 5 better.
According to some embodiments of the present application, optionally, as shown in fig. 3, the discharge opening of the crushing mechanism 2 is communicated with the feed opening of the receiving mechanism 3 through the discharge pipe 6. Besides being arranged in the material receiving cavity 31, the crushing mechanism 2 is also communicated with the material receiving mechanism 3 through a discharge pipe 6. The garden garbage crushed by the crushing mechanism 2 falls into the material receiving cavity 31 of the material receiving mechanism 3 through the discharge pipe 6, and then is transported to the material storage box 5 through the transfer mechanism 32 in the material receiving cavity 31.
According to some embodiments of the application, optionally, as shown in fig. 1, the garden waste crushing and transferring vehicle further comprises a discharging mechanism, and the discharging mechanism is arranged in the storage bin 5. The discharging mechanism comprises a discharging piece 71 and a discharging driving unit 72, the discharging driving unit 72 is connected with the discharging piece 71, and the discharging driving unit 72 is used for driving the discharging piece 71 to reciprocate along the length direction of the storage box 5 so as to load the crushed garden garbage or discharge the crushed garden garbage.
In order to facilitate the loading and unloading of the garbage into and out of the storage bin 5, a discharging mechanism is provided. The discharge mechanism includes a discharge member 71, a discharge drive unit 72, and a discharge rail 73. Wherein, the discharging driving unit 72 is a discharging oil cylinder or a discharging air cylinder. The discharge rails 73 are provided at the upper and lower ends of the magazine 5. Preferably, the discharging part 71 is a discharging push plate, the section of which is a right triangle, and the structure is more stable. One end of the discharge guide rail 73 is arranged on one side of the storage box 5 far away from the receiving cavity 31, the other end of the discharge guide rail 73 extends to one side of the storage box 5 connected with the receiving cavity 31, and the length is the length direction of the storage box 5. Preferably, the discharge guide rails 73 are provided with four, two of which are provided at the upper end position of the storage bin 5, and the other two of which are provided at the lower end position of the storage bin 5. One end of the discharge member 71 is disposed on the discharge rail 73 at the upper end of the magazine 5, and the other end of the discharge member 71 is disposed on the discharge rail 73 at the lower end of the magazine 5. One end of the discharging driving unit 72 can be arranged on the storage box 5, the other end of the discharging driving unit 72 is connected with the discharging member 71, and the discharging driving unit 72 is used for driving the discharging member 71 to move along the discharging guide rail 73.
As a preferred embodiment, as shown in fig. 4 and 5, the receiving mechanism 3 is further hinged to a storage box 5, a lifting driving unit 4 is disposed on the storage box 5, and the lifting driving unit 4 is connected to the receiving mechanism 3. The lifting driving unit 4 is used for driving the material receiving mechanism 3 to rotate around a hinge point of the material receiving mechanism 3 and the material storage box 5 anticlockwise or clockwise so as to open or close the material storage box 5. The lifting driving unit 4 may be a lifting cylinder or a lifting cylinder, for example, the lifting cylinder is fixed on the material receiving mechanism 3, a piston rod of the lifting cylinder is connected with the material storage box 5, when the piston rod of the lifting cylinder extends, the material receiving mechanism 3 is driven to rotate counterclockwise around a hinge point between the material receiving mechanism 3 and the material storage box 5, the material receiving mechanism 3 is lifted, and the material storage box 5 is opened. In the same way, when the piston rod of the lifting oil cylinder contracts, the material receiving mechanism 3 is driven to rotate clockwise around the hinged point of the material receiving mechanism 3 and the material storage box 5, the material receiving mechanism 3 returns to the original state, and the material storage box 5 is closed.
When the garden garbage crushing and transferring trolley works, S101, the discharging driving unit 72 is controlled to drive the discharging piece 71 to move towards the material receiving cavity 31 along the discharging guide rail 73. S102, the worker crushes the garden garbage through the crushing mechanism 2, and the crushed garden garbage falls into the material receiving cavity 31. And S103, after a certain amount of garden waste is crushed, controlling the lifter driving unit 322 to drive the lifter 321 to move downwards along the lifter guide rail 325 to a designated position. And S104, controlling the scraping driving unit 323 to drive the scraping plate 324 to rotate clockwise around the hinge point of the scraping plate 324 and the lifter 321 until the scraping plate 324 is parallel to the horizontal direction, and the scraping plate 324 catches the crushed garden garbage. And S105, controlling the lifter driving unit 322 to drive the lifter 321 to move upwards along the lifter guide rail 325 until the scraper plate 324 is flush with the lower end of the storage box 5. The garden garbage crushed by the lifter guide rail 325 is dumped to the dump member 71 and falls to the storage bin 5. S106, when the crushed garbage between the discharging piece 71 and the lifter 321 is compressed to a certain degree by the discharging piece and the lifter, the discharging driving unit 72 is controlled to drive the discharging piece 71 to move along the discharging guide rail 73 to a direction far away from the receiving cavity 31, so that the storage box 5 is slowly filled with the crushed garden garbage. S106, when the discharging driving unit 72 drives the discharging piece 71 to return to the original state, the storage bin 5 is filled with garden garbage. At this time, the worker is not performing the crushing work. And the garden garbage crushing transfer trolley conveys the crushed garden garbage to a specified place for unloading. And S107, after the specified place is reached, controlling the lifting driving unit 4 to drive the material receiving mechanism 3 to rotate anticlockwise around a hinge point of the material receiving mechanism 3 and the material storage box 5, and opening the material storage box 5. And S108, controlling the discharging driving unit 72 to drive the discharging member 71 to move towards the receiving cavity 31 along the discharging guide rail 73, so as to discharge the crushed garden garbage in the storage bin 5. And S109, after the discharging is finished, controlling the discharging driving unit 72 to drive the discharging piece 71 to return to the original state and controlling the lifting driving unit 4 to drive the material receiving mechanism 3 to rotate clockwise around a hinge point of the material receiving mechanism 3 and the material storage box 5, and closing the material storage box 5. And S110, continuing the operation of the garden garbage crushing and transferring trolley, and repeating the steps from S101 to S109 until the operation is finished.
According to some embodiments of the present application, optionally, the crushing mechanism 2 comprises a shredder comprising a shredder motor and shredding blades. Forward or reverse rotation of the shredder motor is used to drive the shredder blades clockwise or counterclockwise.
The shredding blade is provided with more than two, and when the shredding blade set up two, the shredding blade sets up from top to bottom, and crushing mechanism feed inlet 23 sets up the intermediate position at the shredding blade. The advantages of the shredder over conventional crushers are: because the shredding motor rotates at a low speed, the noise is low and the wear of the shredding blade is small. And the shredder motor may be rotated in either a forward or reverse direction. Gardens rubbish is blocked by the blade easily when the breakage, uses the steerable motor reversal of tearing of shredder, spits out gardens rubbish. Avoid the easy wearing and tearing of garrulous blade when gardens rubbish is blocked.
According to some embodiments of the present application, optionally, the garden waste crushing and transferring vehicle further comprises a hydraulic system 8, and the hydraulic system 8 respectively provides power for the cover plate driving unit 22, the lifter driving unit 322, the scraping driving unit 323, the lifting driving unit 4 and the discharging driving unit 72.
Be different from prior art, above-mentioned technical scheme is being provided with crushing mechanism 2, receiving mechanism 3 and storage case 5, and crushing mechanism 2's discharge gate and receiving mechanism 3's feed inlet intercommunication, and crushing mechanism 2 is used for the gardens rubbish breakage, and broken gardens rubbish falls to receiving mechanism 3 in through receiving mechanism 3's feed inlet by crushing mechanism 2's discharge gate, and rethread transport mechanism 32 transports the interior broken gardens rubbish of receiving mechanism 3 to storage case 5. Can directly transport after broken gardens rubbish is filled with in storage case 5, the rational utilization space for transport cost reduction improves work efficiency.
Finally, it should be noted that, although the above embodiments have been described in the text and drawings of the present application, the scope of the patent protection of the present application is not limited thereby. All technical solutions which are generated by replacing or modifying the equivalent structure or the equivalent flow according to the contents described in the text and the drawings of the present application, and which are directly or indirectly implemented in other related technical fields, are included in the scope of protection of the present application.

Claims (10)

1. The utility model provides a broken transfer car (buggy) of gardens rubbish which characterized in that includes: the vehicle comprises a vehicle chassis, a crushing mechanism, a transferring mechanism, a material receiving mechanism and a material storage box;
the vehicle chassis is provided with the material receiving mechanism and the material storage box, and the material receiving mechanism is communicated with the material storage box;
the discharge hole of the crushing mechanism is communicated with the feed hole of the material receiving mechanism, and the crushing mechanism is used for crushing garden garbage and dropping the garden garbage to the material receiving mechanism;
receiving mechanism includes transfer mechanism, transfer mechanism is used for with broken gardens rubbish in the receiving mechanism transports extremely the storage case.
2. The garden garbage crushing and transferring trolley according to claim 1, wherein the material receiving mechanism further comprises a material receiving cavity, and the crushing mechanism is arranged in the material receiving cavity;
the discharge gate of broken mechanism with connect the feed inlet intercommunication in material chamber, broken mechanism is used for broken gardens rubbish and falls extremely connect the material chamber.
3. The garden garbage crushing and transferring trolley as defined in claim 2, wherein the receiving chamber is provided with a crushing mechanism inlet at the rear of the vehicle traveling direction, and garden garbage enters the crushing mechanism through the crushing mechanism inlet.
4. The garden waste crushing and transferring trolley according to claim 3, wherein the crushing mechanism comprises a feed inlet cover plate, and the feed inlet cover plate is hinged below the feed inlet of the crushing mechanism.
5. The garden garbage crushing and transferring trolley as defined in claim 4, wherein the crushing mechanism further comprises a cover plate driving unit, the cover plate driving unit is connected with the feeding port cover plate, and the cover plate driving unit is used for driving the feeding port cover plate to turn over so as to open or close the feeding port of the crushing mechanism.
6. The garden garbage crushing and transferring trolley according to claim 2, wherein the transferring mechanism comprises a lifter, a lifter driving unit, a scraping driving unit and a scraping plate;
the lifter driving unit is connected with the lifter and drives the lifter to reciprocate between the upper end and the lower end of the receiving cavity so as to lift or lower the lifter;
the scraping plate is hinged to one end of the lifter, the scraping driving unit is connected with the scraping plate, and the scraping plate driving unit is used for driving the scraping plate to rotate clockwise or anticlockwise around a hinged point so as to overturn the scraping plate.
7. The garden garbage crushing transfer trolley according to claim 6, wherein the transfer mechanism further comprises a lifter guide rail, one end of the lifter guide rail is arranged at the upper end of the material receiving cavity, and the other end of the lifter guide rail extends towards the lower end of the material receiving cavity;
the lifter driving unit drives the lifter to move on the lifter guide rail.
8. The garden garbage crushing and transferring trolley according to claim 1, wherein the discharge port of the crushing mechanism is communicated with the feed port of the receiving mechanism through a discharge pipe.
9. The garden garbage crushing and transferring trolley according to claim 1, further comprising a discharging mechanism, wherein the discharging mechanism is arranged in the storage bin;
the discharging mechanism comprises a discharging part and a discharging driving unit, the discharging driving unit is connected with the discharging part, and the discharging driving unit is used for driving the discharging part to reciprocate along the length direction of the storage box so as to load crushed garden garbage or unload the crushed garden garbage.
10. The garden waste crushing transfer trolley according to claim 1, wherein the crushing mechanism comprises a shredder, the shredder comprising a shredder motor and a shredder blade;
the forward rotation or the reverse rotation of the shredding motor is used for driving the shredding blade to rotate clockwise or anticlockwise.
CN202123152043.6U 2021-12-14 2021-12-14 Broken transfer car (buggy) of gardens rubbish Active CN216704637U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115041506A (en) * 2022-07-05 2022-09-13 昆山合纵生态科技有限公司 Carriage is smashed in pull type removal

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115041506A (en) * 2022-07-05 2022-09-13 昆山合纵生态科技有限公司 Carriage is smashed in pull type removal

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